CN210995103U - Flaw detection line drying device - Google Patents
Flaw detection line drying device Download PDFInfo
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- CN210995103U CN210995103U CN201921933219.1U CN201921933219U CN210995103U CN 210995103 U CN210995103 U CN 210995103U CN 201921933219 U CN201921933219 U CN 201921933219U CN 210995103 U CN210995103 U CN 210995103U
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Abstract
The utility model relates to the field of steel wire production, in particular to a flaw detection line drying device.A hot air blower and a blower are arranged in a box body, a heating pipe assembly is arranged at the upper part of the box body, the outlet of the hot air blower is connected with one side of the hot air pipe assembly, and the outlet of the blower is connected with the other side of the hot air pipe assembly; the outer tube is the cavity tubulose, outer tube bottom and box upper portion lean on marginal department looks fixed connection, the inside inner tube that sets up of outer tube, the inner tube is cavity pipe form, the coincidence of the vertical axis of outer tube and the vertical axis of inner tube, the inner tube both ends and the sealed fixed connection of baffle looks, the baffle middle part sets up the baffle hole, the corresponding assorted setting of inner tube and baffle hole, baffle outward flange and the sealed fixed connection of outer tube inner wall looks, the outer tube, form hot-blast dispersion chamber between inner tube and the baffle, hot-blast dispersion chamber is hollow structure, hot-blast dispersion chamber encircles outer tube and inner tube a week, link up on the inner tube and set up hot-blast portal, the utility model discloses rational in infrastructure, can dry the steel.
Description
Technical Field
The utility model relates to a steel wire production field, concretely relates to flaw detection line drying device.
Background
In the steel wire production process, steel wire flaw detection is an important link, the steel wire needs to be repainted to the steel wire surface when discovering that there is the mar, need in time dry the steel wire after the repaiied lacquer, because the steel wire is in the motion state always at the in-process of detecting a flaw, the steel wire is at the speed of motion of line of detecting a flaw 120m/s, the steel wire production line length of detecting a flaw is limited, consequently need dry the steel wire surface after the repaiied lacquer in the very short time, current drying equipment can not effectually carry out fast drying to the steel wire surface after the repaiied lacquer.
Disclosure of Invention
For solving the problem of the prior art, the utility model provides a flaw detection line drying device.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a drying device for a flaw detection line comprises a box body, an air heater, an air feeder and a heating pipe assembly, wherein the air heater and the air feeder are arranged in the box body, the heating pipe assembly is arranged at the upper part of the box body, an outlet of the air heater is connected with one side of the hot air pipe assembly, and an outlet of the air feeder is connected with the other side of the hot air pipe assembly;
the hot-blast main subassembly includes the outer tube, the inner tube, the baffle, hot-blast dispersion chamber and hot-blast hole, the outer tube is the cavity tubulose, outer tube bottom and box upper portion are by edge department looks fixed connection, the inside inner tube that sets up of outer tube, the inner tube is the cavity pipe form, the outer tube is vertical axis coincidence with the vertical axis of inner tube, the inner tube both ends seal fixed connection mutually with the baffle, the baffle middle part sets up the baffle hole, the inner tube matches the setting with the baffle hole is corresponding, baffle outward flange and outer tube inner wall looks seal fixed connection, the outer tube, form hot-blast dispersion chamber between inner tube and the baffle, hot-blast dispersion chamber is hollow structure, hot-blast dispersion chamber encircles outer tube and inner tube.
The box body comprises a box bottom plate, a box side plate I, a box side plate II, a box side plate III, a box door, a box top plate and a box body cavity, wherein the box bottom plate is rectangular, the bottoms of the box side plate I, the box side plate II and the box side plate III are vertically and fixedly connected with the edge of the box bottom plate, the upper parts of the box side plate I, the box side plate II and the box side plate III are fixedly connected with the edge of the bottom of the box top plate, a box body cavity is formed among the box bottom plate, the box side plate I, the box side plate II and the box side plate III, and the box door is arranged on one side of the box body cavity.
Furthermore, an air heater and an air feeder are arranged in the box body cavity, one side of the air heater is fixedly connected with two side walls of the side plate of the box, the air heater is communicated with the hot air pipe assembly through a hot air fan pipe, the bottom of the air feeder is fixed on the bottom plate of the box, and the air feeder is communicated with the heating pipe assembly through an air supply pipe.
The hot air blower comprises a first hot air blower and a second hot air blower, and the first hot air blower and the second hot air blower are parallelly fixed on the two side walls of the side plate of the box.
Further the inner tube length is less than the outer tube length.
The hot air outlet is in a circular hole shape, and the preferred hot air outlet is arranged at the upper end and the lower end face of the inner pipe.
The diameter of the hot air outlet is 15-20 mm.
Further baffle hole is the round hole form, and the inner tube lateral wall is fixed sealing connection mutually with the tube hole outside, and the vertical axis in baffle hole coincides with the vertical axis in inner tube.
Further the bottom of the outer pipe is communicated with a hot air inlet and an air supply inlet, the hot air inlet and the air supply inlet are both in a circular hole shape, the hot air inlet is communicated with the bottom wall of the outer pipe and the box top plate, the air heater pipe penetrates through the hot air inlet, the air supply inlet is communicated with the bottom wall of the outer pipe and the box top plate, and the air supply pipe penetrates through the air supply inlet.
Furthermore, the section of the outer pipe is rectangular, and the width of the outer pipe is larger than the diameter of the inner pipe.
Compared with the prior art, the invention has the beneficial effects that: the utility model discloses it is rational in infrastructure, can dry to the steel wire through after the touch-up paint wherein by the efficient, hot-blast realization that the air heater produced mixes the pressurization with the wind that the forced draught blower blew off under heating pipe assembly's effect, finally carries out high-efficient drying to the touch-up paint steel wire wherein in heating pipe assembly's inner tube.
Drawings
Other features, objects and advantages of the invention will become more apparent from a reading of the following detailed description of non-limiting embodiments thereof, with reference to the accompanying drawings.
Fig. 1 is a schematic view of the structure of the present invention.
Fig. 2 is a schematic side view of the present invention.
Fig. 3 is a schematic top view of the present invention.
In the above drawings, the names corresponding to the reference numerals are a box body 1, a box bottom plate 11, a box side plate I12, a box side plate II 13, a box side plate III 14, a box door 15, a box top plate 16, a box body cavity 17, a hot air blower 2, a hot air blower I21, a hot air blower II 22, a hot air pipe assembly 4, an outer pipe 41, a hot air inlet 411, an air supply inlet 412, an inner pipe 42, a baffle 43, a baffle hole 431, a hot air dispersion cavity 44 and a hot air outlet 45.
Detailed Description
The present invention will be described in further detail with reference to the following examples, which are provided only for illustrating the present invention and do not limit the scope of the present invention.
Referring to fig. 1-3, a drying device for a flaw detection line includes a box 1, an air heater 2, a blower 3, and a heating pipe assembly 4, wherein the air heater 2 and the blower 3 are disposed in the box 1, the heating pipe assembly 4 is disposed on the upper portion of the box 1, an outlet of the air heater 2 is connected to one side of the heating pipe assembly 4, and an outlet of the blower 3 is connected to the other side of the heating pipe assembly 4.
The box body 1 is of a three-dimensional structure, the box body 1 comprises a box bottom plate 11, a box side plate I12, a box side plate II 13, a box side plate III 14, a box door 15, a box top plate 16 and a box body cavity 17, the box bottom plate 11 is rectangular, the bottoms of the box side plate I12, the box side plate II 13 and the box side plate III 14 are vertically and fixedly connected with the edge of the box bottom plate 11, the upper parts of the box side plate I12, the box side plate II 13 and the box side plate III 14 are fixedly connected with the edge of the bottom of the box top plate 16, the box body cavity 17 is formed among the box bottom plate 11, the box side plate I12, the box side plate II 13 and the box side plate III 14, and the box door 15 is.
Preferably, one side of the box door 15 is hinged with one side of the third box side plate 14, an air heater 2 and a blower 3 are arranged in the box cavity 11, one side of the air heater 2 is fixedly connected with the side wall of the second box side plate 13, the air heater 2 is communicated with the hot air pipe assembly 4 through an air heater pipe 20, the bottom of the blower 3 is fixed on the box bottom plate 11, and the blower 3 is communicated with the heating pipe assembly 4 through an air supply pipe 31.
The hot air blower 2 comprises a first hot air blower 21 and a second hot air blower 22, and the first hot air blower 21 and the second hot air blower 22 are fixed on the side wall of the second box side plate 13 in parallel.
The hot air duct assembly 4 comprises an outer duct 41, an inner duct 42, a baffle 43, a hot air dispersing cavity 44 and a hot air outlet 45, the outer duct 41 is hollow tubular, the bottom of the outer duct 41 is fixedly connected with the upper portion of the box body 1 near the edge, the bottom of the outer duct 41 is fixedly connected with the upper portion of the box top plate 16 near the edge, the inner duct 42 is arranged inside the outer duct 41, the inner duct 42 is hollow tubular, the longitudinal central axis of the outer duct 41 is coincident with the longitudinal central axis of the inner duct 42, the length of the preferred inner duct 42 is smaller than that of the outer duct 41, two ends of the inner duct 42 are fixedly connected with the baffle 43 in a sealing manner, the middle portion of the baffle 43 is provided with a baffle hole 431, the inner duct 42 is correspondingly matched with the baffle hole 431, the outer edge of the baffle 43 is fixedly connected with the inner wall of the outer duct 41 in a sealing manner, the hot air dispersing cavity 44 is formed between the, the inner pipe 42 is provided with hot air outlets 45, preferably, the hot air outlets 45 are circular holes, and preferably, the hot air outlets 45 are provided at the upper end surface and the lower end surface of the inner pipe 42. The wind dispersing chamber 44 has the function of mixing and finally discharging wind, the wind input by the blower 3 is mixed with the wind blown by the hot air blower 2 in the wind dispersing chamber 44, and the mixed hot wind is blown out from the hot wind outlet 45 under the function of the wind pressure and enters the inner pipe 42 to finish the drying of the steel wire passing through the inner pipe 42.
The diameter of the hot air outlet 45 is 15-20 mm.
The bottom of the outer tube 41 is provided with a hot air inlet 411 and an air supply inlet 412 in a penetrating manner, the hot air inlet 411 and the air supply inlet 412 are both in a circular hole shape, the hot air inlet 411 penetrates through the bottom wall of the outer tube 41 and the box top plate 16, the air heater pipe 20 penetrates through the hot air inlet 411, the air supply inlet 412 penetrates through the bottom wall of the outer tube 41 and the box top plate 16, and the air supply pipe 31 penetrates through the air supply inlet 412.
Preferably, the outer tube 41 has a rectangular cross-section, and the width of the outer tube 41 is greater than the diameter of the inner tube 42. as an embodiment, the outer tube 41 may be selected from a hollow circular tube,
when in use, hot air blown out from the hot air blower 2 enters one side of the hot air dispersion cavity 44 from the hot air inlet 411, air blown out from the air blower 3 enters the other side of the hot air dispersion cavity 44 from the air supply inlet 412, the hot air fed into the hot air dispersion cavity 44 is mixed with air conveyed from the air blower 3 in the hot air dispersion cavity 44 under the action of air pressure, and is blown out from the hot air outlet 45 and enters the inner pipe 42 under the action of the air pressure, so that the painted surface of the iron wire passing through the inner pipe 42 is dried.
While the invention has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention. However, any simple modification, equivalent change and modification made to the above embodiments according to the technical substance of the present invention still belong to the protection scope of the technical solution of the present invention.
Claims (10)
1. A drying device for a flaw detection line is characterized by comprising a box body, an air heater, an air feeder and a heating pipe assembly, wherein the air heater and the air feeder are arranged in the box body;
the hot-blast main subassembly includes the outer tube, the inner tube, the baffle, hot-blast dispersion chamber and hot-blast hole, the outer tube is the cavity tubulose, outer tube bottom and box upper portion are by edge department looks fixed connection, the inside inner tube that sets up of outer tube, the inner tube is the cavity pipe form, the outer tube is vertical axis coincidence with the vertical axis of inner tube, the inner tube both ends seal fixed connection mutually with the baffle, the baffle middle part sets up the baffle hole, the inner tube matches the setting with the baffle hole is corresponding, baffle outward flange and outer tube inner wall looks seal fixed connection, the outer tube, form hot-blast dispersion chamber between inner tube and the baffle, hot-blast dispersion chamber is hollow structure, hot-blast dispersion chamber encircles outer tube and inner tube.
2. The flaw detection line drying device according to claim 1, characterized in that: the box body comprises a box bottom plate, a box side plate I, a box side plate II, a box side plate III, a box door, a box top plate and a box body cavity, wherein the box bottom plate is rectangular, the bottoms of the box side plate I, the box side plate II and the box side plate III are vertically and fixedly connected with the edge of the box bottom plate, the upper parts of the box side plate I, the box side plate II and the box side plate III are fixedly connected with the edge of the bottom plate of the box top plate, a box body cavity is formed among the box bottom plate, the box side plate I, the box side plate II and the box side plate III, and the box door is arranged on one side of the.
3. The flaw detection line drying device according to claim 2, characterized in that: the box body cavity is internally provided with an air heater and an air feeder, one side of the air heater is fixedly connected with two side walls of the side plate of the box, the air heater is communicated with a hot air pipe assembly through a hot air fan pipe, the bottom of the air feeder is fixed on the bottom plate of the box, and the air feeder is communicated with a heating pipe assembly through an air supply pipe.
4. The flaw detection line drying device according to claim 1, characterized in that: the hot air blower comprises a first hot air blower and a second hot air blower, and the first hot air blower and the second hot air blower are fixed on the two side walls of the side plate of the box in parallel.
5. The flaw detection line drying device according to claim 1, characterized in that: the length of the inner pipe is less than that of the outer pipe.
6. The inspection line drying apparatus according to claim 5, characterized in that: the hot air outlet is in a circular hole shape, and the preferred hot air outlet is arranged at the upper end and the lower end face of the inner pipe.
7. The inspection line drying apparatus according to claim 6, characterized in that: the diameter of the hot air outlet is 15-20 mm.
8. The flaw detection line drying device according to claim 7, characterized in that: the baffle hole is circular hole-shaped, the side wall of the inner tube is fixedly and hermetically connected with the outer side of the tube hole, and the longitudinal central axis of the baffle hole coincides with the longitudinal central axis of the inner tube.
9. The flaw detection line drying device according to claim 8, characterized in that: the bottom of the outer pipe is communicated with a hot air inlet and an air supply inlet, the hot air inlet and the air supply inlet are both in a circular hole shape, the hot air inlet is communicated with the bottom wall of the outer pipe and the box top plate, the air heater pipe penetrates through the hot air inlet, the air supply inlet is communicated with the bottom wall of the outer pipe and the box top plate, and the air supply pipe penetrates through the air supply inlet.
10. The flaw detection line drying device according to claim 8, characterized in that: the cross section of the outer pipe is rectangular, and the width of the outer pipe is larger than the diameter of the inner pipe.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921933219.1U CN210995103U (en) | 2019-11-11 | 2019-11-11 | Flaw detection line drying device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921933219.1U CN210995103U (en) | 2019-11-11 | 2019-11-11 | Flaw detection line drying device |
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Publication Number | Publication Date |
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CN210995103U true CN210995103U (en) | 2020-07-14 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201921933219.1U Active CN210995103U (en) | 2019-11-11 | 2019-11-11 | Flaw detection line drying device |
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CN (1) | CN210995103U (en) |
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2019
- 2019-11-11 CN CN201921933219.1U patent/CN210995103U/en active Active
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